Nature Communications (Feb 2025)

Observation of higher-order time-dislocation topological modes

  • Jia-Hui Zhang,
  • Feng Mei,
  • Yi Li,
  • Ching Hua Lee,
  • Jie Ma,
  • Liantuan Xiao,
  • Suotang Jia

DOI
https://doi.org/10.1038/s41467-025-56717-w
Journal volume & issue
Vol. 16, no. 1
pp. 1 – 9

Abstract

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Abstract Topological dislocation modes resulting from the interplay between spatial dislocations and momentum-space topology have recently attracted significant interest. Here, we theoretically and experimentally demonstrate time-dislocation topological modes which are induced by the interplay between temporal dislocations and Floquet-band topology. By utilizing an extra physical dimension to represent the frequency-space lattice, we implement a two-dimensional Floquet higher-order topological phase and observe time-dislocation induced π-mode topological corner modes in a three-dimensional circuit metamaterial. Intriguingly, the realized time-dislocation topological modes exhibit spatial localization at the temporal dislocation, despite homogeneous in-plane lattice couplings across it. Our study opens a new avenue to explore the topological phenomena enabled by the interplay between real-space, time-space and momentum-space topology.